Many applications in plasmonics are related to the coupling between metallic nanoparticles (MNPs) or between an emitter and a MNP. The theoretical analysis of such a coupling is thus of fundamental importance to analyze the plasmonic behavior and to design new systems. While classical methods neglect quantum and spill-out effects, time-dependent density functional theory (TD-DFT) considers all of them and with Kohn–Sham orbitals delocalized over the whole system. Thus, within TD-DFT, no definite separation of the subsystems (the single MNP or the emitter) and their couplings is directly available. This important feature is obtained here using the subsystem formulation of TD-DFT, which has been originally developed in the context of weakly i...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Ultrastrong coupling (USC) is a distinct regime of light-matter interaction in which the coupling st...
The plasmonic properties of gold nanotube assemblies are investigated using time-dependent density f...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
We develop a quantum kinetic theory of the dynamic response of typical noble metals. Our approach is...
In the new field of quantum plasmonics, plasmonic excitations of silver and gold nanoparticles are u...
State-of-the-art fabrication and characterization techniques are nowadays able to experimentally con...
The coupling of optical excitation and electron transport through a sodium atom in a plasmonic dimer...
The optical response of a system formed by a quantum emitter and a plasmonic gap nanoantenna is theo...
Plasmonic dimer systems show great promise in a wide range of applications because of their unique o...
We investigate molecular plasmonic excitations sustained in hollow spherical gold nanoparticles usin...
International audienceUltrastrong coupling (USC) is a distinct regime of light-matter interaction in...
International audienceThe optical response of a system formed by a quantum emitter and a plasmonic g...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Ultrastrong coupling (USC) is a distinct regime of light-matter interaction in which the coupling st...
The plasmonic properties of gold nanotube assemblies are investigated using time-dependent density f...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
We develop a quantum kinetic theory of the dynamic response of typical noble metals. Our approach is...
In the new field of quantum plasmonics, plasmonic excitations of silver and gold nanoparticles are u...
State-of-the-art fabrication and characterization techniques are nowadays able to experimentally con...
The coupling of optical excitation and electron transport through a sodium atom in a plasmonic dimer...
The optical response of a system formed by a quantum emitter and a plasmonic gap nanoantenna is theo...
Plasmonic dimer systems show great promise in a wide range of applications because of their unique o...
We investigate molecular plasmonic excitations sustained in hollow spherical gold nanoparticles usin...
International audienceUltrastrong coupling (USC) is a distinct regime of light-matter interaction in...
International audienceThe optical response of a system formed by a quantum emitter and a plasmonic g...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Ultrastrong coupling (USC) is a distinct regime of light-matter interaction in which the coupling st...
The plasmonic properties of gold nanotube assemblies are investigated using time-dependent density f...